Single-cell profiling reveals age-associated immunity in atherosclerosis

Author:

Smit Virginia1ORCID,de Mol Jill1,Schaftenaar Frank H1,Depuydt Marie A C1,Postel Rimke J1,Smeets Diede1,Verheijen Fenne W M1,Bogers Laurens1,van Duijn Janine1,Verwilligen Robin A F1,Grievink Hendrika W12,Bernabé Kleijn Mireia N A1,van Ingen Eva1,de Jong Maaike J M1,Goncalves Lauren3,Peeters Judith A H M3,Smeets Harm J3,Wezel Anouk3,Polansky Julia K4,de Winther Menno P J5,Binder Christoph J6,Tsiantoulas Dimitrios6,Bot Ilze1,Kuiper Johan1ORCID,Foks Amanda C1ORCID

Affiliation:

1. Leiden Academic Centre for Drug Research, Division of BioTherapeutics, Leiden University , Einsteinweg 55, 2333 CC Leiden , The Netherlands

2. Centre for Human Drug Research , Zernikedreef 8, 2333 CL Leiden , The Netherlands

3. Department of Surgery, Haaglanden Medical Center—location Westeinde , Lijnbaan 32, 2515 VA The Hague , The Netherlands

4. Berlin Institute of Health at Charité—Universitätsmedizin Berlin, BIH Center for Regenerative Therapies (BCRT) , Augustenburger Platz 1, 13353 Berlin , Germany

5. Amsterdam University Medical Centers—location AMC, University of Amsterdam, Experimental Vascular Biology, Department of Medical Biochemistry, Amsterdam Cardiovascular Sciences , Meibergdreef 9, 1105 AZ Amsterdam , The Netherlands

6. Department of Laboratory Medicine, Medical University of Vienna , Lazarettgasse 14, AKH BT25.2, 1090 Vienna , Austria

Abstract

Abstract Aims Aging is a dominant driver of atherosclerosis and induces a series of immunological alterations, called immunosenescence. Given the demographic shift towards elderly, elucidating the unknown impact of aging on the immunological landscape in atherosclerosis is highly relevant. While the young Western diet-fed Ldlr-deficient (Ldlr−/−) mouse is a widely used model to study atherosclerosis, it does not reflect the gradual plaque progression in the context of an aging immune system as occurs in humans. Methods and results Here, we show that aging promotes advanced atherosclerosis in chow diet-fed Ldlr−/− mice, with increased incidence of calcification and cholesterol crystals. We observed systemic immunosenescence, including myeloid skewing and T-cells with more extreme effector phenotypes. Using a combination of single-cell RNA-sequencing and flow cytometry on aortic leucocytes of young vs. aged Ldlr−/− mice, we show age-related shifts in expression of genes involved in atherogenic processes, such as cellular activation and cytokine production. We identified age-associated cells with pro-inflammatory features, including GzmK+CD8+ T-cells and previously in atherosclerosis undefined CD11b+CD11c+T-bet+ age-associated B-cells (ABCs). ABCs of Ldlr−/− mice showed high expression of genes involved in plasma cell differentiation, co-stimulation, and antigen presentation. In vitro studies supported that ABCs are highly potent antigen-presenting cells. In cardiovascular disease patients, we confirmed the presence of these age-associated T- and B-cells in atherosclerotic plaques and blood. Conclusions Collectively, we are the first to provide comprehensive profiling of aged immunity in atherosclerotic mice and reveal the emergence of age-associated T- and B-cells in the atherosclerotic aorta. Further research into age-associated immunity may contribute to novel diagnostic and therapeutic tools to combat cardiovascular disease.

Funder

Dutch Heart Foundation

ERA-CVD B-eatATHERO consortium

Austrian Science Fund

Leducq Foundation

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Single-cell profiling of CD11c+ B cells in atherosclerosis;Frontiers in Immunology;2024-01-08

2. Atherosclerosis antigens as targets for immunotherapy;Nature Cardiovascular Research;2023-12-11

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